共 19 条
- [1] pp. 21-25, (2019)
- [2] WANG F X, CUI M L, LIU H D, Et al., Characterization and identification of a fraction from silver carp (Hypophthalmichthys molitrix) muscle hydrolysates with cryoprotective effects on yeast, LWT-Food Science and Technology, 137, (2021)
- [3] WANG F X, XIONG S J, LI X H, Et al., Cryoprotective effect of silver carp muscle hydrolysate on baker's yeast Saccharomyces cerevisiae and its underlying mechanism, Food Science & Nutrition, 8, 1, pp. 190-198, (2020)
- [4] MUELLER, JASON P, LICEAGA, Et al., Characterization and cryoprotection of invasive silver carp (Hypophthalmichthys molitrix)protein hydrolysates, Journal of Aquatic Food Product Technology, 25, pp. 131-143, (2016)
- [5] REN J Y, ZHAO M M, SHI J, Et al., Purification and identification of antioxidant peptides from grass carp muscle hydrolysates by consecutive chromatography and electrospray ionizationmass spectrometry, Food Chemistry, 108, 2, pp. 727-736, (2008)
- [6] CHEN W Z, HOSENEY R C., Development of an objective method for dough stickiness, LWT-Food Science and Technology, 28, 5, pp. 467-473, (1995)
- [7] pp. 12-16, (2011)
- [8] XIN C, NIE L J, CHEN H L, Et al., Effect of degree of substitution of carboxymethyl cellulose sodium on the state of water, rheological and baking performance of frozen bread dough, Food Hydrocolloids, 80, pp. 8-14, (2018)
- [9] LUO W H, SUN D W, ZHU Z W, Et al., Improving freeze tolerance of yeast and dough properties for enhancing frozen dough quality-a review of effective methods, Trends in Food Science & Technology, 72, pp. 25-33, (2018)
- [10] GIANNOU V, TZIA C., Cryoprotective role of exogenous trehalose in frozen dough products, Food Bioprocess Technology, 1, pp. 276-284, (2008)